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Evaporation System Solutions-Energy and the Environment

机译:蒸发系统解决方案 - 能源和环境

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Evaporator technology has developed to improve the energy efficiency and environmental performance of the mill. To optimize evaporator plants, it is important to evaluate the "life cycle cost" (LCC). A low LCC includes optimized energy solutions, high availability and positive impacts on the environment, especially air and water. Energy optimization requires that fuel price, electricity price and fuel self sufficiency be evaluated using the mills internal evaluation parameters in a LCC analysis.Evaporation plants can be designed to improve the environmental performance of the recovery boiler by producing higher firing solids and creating less variation in the firing solids. Overall Methanol removal in the evaporators can be improved by liquor and vapor flow configuration to improve condensate segregation, efficiently integrated condensate treatment systems, and reprocessing intermediate condensate inside of falling film evaporators. Measured overall Methanol removal efficiencies of 97-98% have been obtained in modern evaporator plants. Evaporation of various mill effluent streams can also improve the environmental performance of the recovery island. Mill experience with a nine effect system that improved both the energy and environmental performance of a European mill will be reviewed. Other mill experiences from solutions generated in LCC analyses that improved both environmental performance and energy efficiency are also discussed.
机译:蒸发器技术已经开发出来,以提高轧机的能效和环境性能。为了优化蒸发器植物,重要的是评估“生命周期成本”(LCC)。低LCC包括优化的能源解决方案,高可用性和对环境的积极影响,特别是空气和水。能量优化要求使用LCC分析中的轧机内部评估参数评估燃料价格,电力价格和燃料自给自足。Aevaporation植物可以通过产生更高的烧制固体并产生更少的变化来改善回收锅炉的环境性能。烧成固体。蒸发器中的总体甲醇去除可以通过液体和蒸汽流动构造来改善,以改善冷凝物偏析,有效地集成冷凝水处理系统,并再处理中间冷凝物在下落的薄膜蒸发器内部。测量的总体甲醇去除效率为97-98%,在现代蒸发器植物中获得。各种磨机流出物流的蒸发也可以改善恢复岛的环境性能。培养厂房经验具有九种效果系统,将审查改善欧洲磨坊的能源和环境性能。还讨论了LCC中生成的解决方案的其他轧机经验,改善了环境性能和能源效率。

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